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Biomedical subjects

K Kajinami

Publications and source records attributed to K Kajinami.

At least 37 records · Page 2Linked to original sources

Low-density lipoprotein receptor genotype-dependent response to cholesterol lowering by combined pravastatin and cholestyramine in familial hypercholesterolemia.

We compared the effects of cholesterol-lowering therapy on 2 patient groups genetically defined as heterozygous for familial hypercholesterolemia (FH), 5 with a deletion of exon 15 (FH(Tonami-1)), and 7 with a point mutation at codon 664 (FH(Kanazawa-2)). There were significant differences in both serum and low-density lipoprotein cholesterol reductions between the 2 groups after combination therapy with pravastatin and cholestyramine, and the overall effect of genotype on serial changes in both was significant.

Adult↗

Clinical characteristics of double heterozygotes with familial hypercholesterolemia and cholesteryl ester transfer protein deficiency.

Coronary heart disease (CHD) in familial hypercholesterolemia (FH) may be modified by genetic and/or environmental factors. We described the effect of the cholesteryl ester transfer protein (CETP) gene on CHD in heterozygous FH caused by low density lipoprotein receptor (LDL-R) gene mutation. In 288 unrelated Japanese subjects with heterozygous FH, the allele frequency of an intron 14 G(+1)-to-A mutation (Int14 A) and a missense mutation in exon 15 (Asp442 to Gly, D442G) was 0.3 and 3.0%, respectively. HDL-C levels (1.55 +/- 0.08 mmol/l) in FH patients with heterozygous CETP deficiency were higher than those (1.19 +/- 0.08 mmol/l) in FH without CETP deficiency (P < 0.03), while LDL-C levels in FH with CETP deficiency were moderately reduced. However, two FH patients with CETP deficiency suffered myocardial infarction, and six patients had effort angina pectoris and/or coronary atherosclerosis. No difference in the score of coronary stenosis index (CSI) was found in FH with/without CETP deficiency, although CSI was inversely correlated with HDL-C levels (P < 0.05). Thus, the effect of increased HDL-C levels caused by partial deficiency of CETP is insufficient to prevent CHD in FH.

Adult↗

Coronary calcification and coronary atherosclerosis: site by site comparative morphologic study of electron beam computed tomography and coronary angiography.

OBJECTIVES: We compared, on a site by site basis, the morphologic features of coronary calcifications determined by electron beam computed tomography (EBCT) and angiographically defined coronary atherosclerosis. BACKGROUND: Quantification of coronary calcification using EBCT is clinically useful for the prediction of coronary stenosis. However, the relation between calcification and angiographic findings has not been evaluated by site. METHODS: We studied 251 consecutive patients who underwent elective coronary angiography for suspected coronary artery disease by EBCT and analyzed findings by site. Coronary calcifications were classified according to their length and width versus the diameter of the coronary artery in which the calcification was observed as: none, spotty, long, wide and diffuse. RESULTS: Coronary calcifications were found in 666 (27%) of 2,470 segments. The positive predictive value (PPV) of coronary calcification for significant stenosis (> or = 75% densitometric narrowing) and for all angiographically detectable atherosclerotic lesions in a segment was 0.36 and 0.80, respectively. The PPV for significant stenosis and all atherosclerotic lesions was 0.04 and 0.17 in none, 0.18 and 0.59 in spotty, 0.32 and 0.87 in long, 0.40 and 0.84 in wide and 0.56 and 0.96 in diffuse calcifications, respectively. The PPV for both significant stenosis and all lesions differed significantly (p = 0.001) among the morphologic groups. Of the 105 eccentric significant stenoses, 54 (53%) were classified as long or diffuse calcifications. Of the 95 significant stenoses with multiple irregularities, 61 (64%) showed diffuse calcification. CONCLUSIONS: Morphologic evaluation of coronary calcifications using EBCT improved the prediction of coronary stenosis on a site by site basis and provided information related to angiographic morphology.

Adolescent↗

Catalytically inactive lecithin: cholesterol acyltransferase (LCAT) caused by a Gly 30 to Ser mutation in a family with LCAT deficiency.

Plasma lecithin:cholesterol acyltransferase (LCAT) plays an important role in early steps of reverse cholesterol transport, i.e., cholesterol efflux from peripheral tissues and cholesterol esterification in HDL. However, structural and functional relationships of LCAT have not been fully elucidated. We described a missense mutation of Gly 30-to-Ser in a patient with classical LCAT deficiency. The proband was homozygous for the mutation and had a very low level of HDL cholesterol (2 mg/dl), with a half of normal LCAT mass (2.75 micrograms/ml), but no detectable or very low LCAT activity in endogenous and exogenous substrate assays. Both his mother and sister were heterozygous for the mutation, and had slightly decreased levels of HDL cholesterol (34 and 36 mg/dl, respectively). Transient expression study using COS cells indicated that mutant cDNA produces similar amounts of media protein as compared to wild type, but no detectable LCAT activity. The missense mutation may result in a near-native conformation without large effects on cellular secretion but a catalytically defective protein. Thus, the N-terminal domain appears crucial for enzymatic activity, in addition to the catalytically active consensus sequence of Gly179 to Gly183 and a putative sterol binding domain of Glu154 to Lys173.

Animals↗

Long-term probucol treatment results in regression of xanthomas, but in progression of coronary atherosclerosis in a heterozygous patient with familial hypercholesterolemia.

A 66-year-old male heterozygous familial hypercholesterolemia (FH) patient with significant coronary atherosclerosis has been treated by us with probucol (1000 mg daily) for eight years. This treatment has produced significant reductions in the cholesterol levels of his serum, low density lipoprotein (LDL), and high density lipoprotein (HDL) from 237 +/- 20 mg/dl (mean +/- S.D.) to 156 +/- 15, from 175 +/- 8 to 111 +/- 16 mg/dl, and from 23 +/- 4 to 19 +/- 2 mg/dl, respectively. These reductions have been maintained for eight years. Serum triglyceride levels also decreased, from 220 +/- 54 to 146 +/- 36 md/dl. During this period, marked regression of xanthomas on the eyelids and finger extensor tendons was observed, while thickness of the Achilles tendons was reduced from 21.0 mm to 13.0 mm. On other hand, effort-induced anginal symptoms requiring additional antianginal medication have been noticed, and angiographically-demonstrated coronary atherosclerosis has progressed significantly during these eight years. These observations lead us to suggest that maintaining low levels of HDL cholesterol with probucol, even though resulting in satisfactory reduction of LDL cholesterol and marked regression of xanthomas, appears to be associated with the progression of atherosclerosis in the coronary arteries.

Aged↗

Noninvasive prediction of coronary atherosclerosis by quantification of coronary artery calcification using electron beam computed tomography: comparison with electrocardiographic and thallium exercise stress test results.

OBJECTIVES: This study was designed to compare the usefulness of electron beam computed tomography for prediction of coronary stenosis with that of electrocardiographic (ECG) and thallium exercise tests. BACKGROUND: Electron beam computed tomography can quantify coronary calcifications; however, its clinical value has yet to be established. METHODS: Using the volume mode of electron beam computed tomography, we studied 251 consecutive patients who underwent elective coronary angiography because of suspected coronary artery disease and compared the results with those of ECG and thallium exercise tests. The total coronary calcification score was calculated by multiplying the area ( > or = 2 pixels) of calcification (peak density > or = 130 Hounsfield units) by an arbitrarily weighted density score (0 to 4) based on its peak density. The mean of two scans was log transformed. RESULTS: Calcification was first noted in women in the 4th decade of life, approximately 10 years later than its occurrence in men. Among patients with advanced atherosclerosis (two- and three-vessel disease), calcification scores were uniformly high in women but ranged widely in men. Nine percent of patients with significant stenoses ( > or = 75% by densitometry) had no calcification. The calcification scores of patients with significant stenosis in at least one vessel were significantly higher than those of patients without significant stenosis in the study group as a whole and in most patient subgroups classified according to age and gender. A cutoff calcification score for prediction of significant stenosis, determined by receiver operating characteristic curve analysis, showed high sensitivity (0.77) and specificity (0.86) in all study patients; sensitivity was similarly high even in older patients ( > or = 70 years) and was enhanced in middle-aged patients (40 to < or = 60 years). The difference in specificity between calcification scores and ECG exercise test results had borderline significance (p = 0.058) and that between calcification scores and thallium test results was significant (p = 0.001). The latter difference became small but remained significant (p = 0.01) even after the reevaluation of thallium test results in light of each subject's clinical data. CONCLUSIONS: Quantification of coronary artery calcification with electron beam computed tomography noninvasively predicted angiographically confirmed coronary stenosis. Results obtained with this method were at least as useful and potentially better in some patient groups than those obtained with thallium and ECG exercise testing.

Adolescent↗

Clinical efficacy of fluvastatin in the long-term treatment of familial hypercholesterolemia.

The long-term clinical efficacy of fluvastatin was assessed in 24 patients with familial hypercholesterolemia over a total treatment period of 104 weeks. Patients received an initial fluvastatin dose of 20 mg/day for 8 weeks, which was increased to 30 mg/day for a further 16 weeks. From week 24, if serum total cholesterol remained > or = 230 mg/dL, the fluvastatin dose could be increased to 40 or 60 mg/day, as necessary. By the end of treatment, 4 patients were receiving 30 mg/day fluvastatin, 1 patient was receiving 40 mg/day, and 19 patients were receiving 60 mg/day. Serum total cholesterol and low density lipoprotein cholesterol (LDL-C) levels showed a significant decrease from baseline at week 104 (total cholesterol, -26.8 +/- 2.4%; LDL-C, -33.1 +/- 3.3%; p < 0.001). The reductions in total cholesterol and LDL-C were dose-related. Statistically significant (p < 0.05) increases in serum high density lipoprotein cholesterol (HDL-C) were observed at week 24 (12.1 +/- 5.0%) and at week 76 (11.0 +/- 3.3%), although the effect was variable. Nevertherless, at the end of treatment the LDL-C: HDL-C ratio showed a 35% reduction from baseline. Changes in triglyceride levels failed to achieve statistical significance, with a reduction from baseline of -13.9 +/- 7.3% at week 104. Changes in apolipoprotein A-I were variable, with statistically significant (p < 0.01) increases observed at week 24 (7.6 +/- 2.3%) and week 76 (8.4 +/- 2.7%). By contrast, a significant reduction from baseline in apolipoprotein B was achieved by week 12 (-15.0 +/- 2.3%; p < 0.001) and was maintained throughout the study.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Ultrafast computed tomography in the diagnosis and evaluation of anomalous origin of the right coronary artery.

Anomalous origin of the right coronary artery may lead to myocardial ischemia despite the absence of atherosclerosis. We report the case of a 52-year-old man who was admitted to our hospital with exertional chest discomfort and palpitations. An anomalous origin of the right coronary artery was demonstrated by coronary angiography. There was no evidence of atherosclerosis in either the left or right coronary arteries. However, detailed information regarding the proximal portion of the anomalous artery was not acquired by coronary angiography. In this patient, ultrafast computed tomography (UFT) revealed an acute angle takeoff of the anomalous right coronary artery from the aorta. Furthermore, the proximal portion of the right coronary artery traversed the aorta and pulmonary trunk. This case illustrates that UFT is useful for detecting an anomalous origin of the coronary arteries and evaluating the mechanism of myocardial ischemia in patients with anomalous origin of the coronary arteries.

Coronary Angiography↗

Reduction of lipoprotein(a) by LDL-apheresis using a dextran sulfate cellulose column in patients with familial hypercholesterolemia.

Lipoprotein(a) (Lp(a)) was eliminated by LDL-apheresis using a dextran sulfate cellulose column in 3 homozygous and 10 heterozygous familial hypercholesterolemic patients. Immediately after LDL-apheresis by the LA-15 system (continuous LDL apheresis), there were significant reductions in Lp(a) concentrations (28.6 +/- 11.8 mg/dl (mean +/- S.E.) to 9.6 +/- 5.6 mg/dl (P < 0.01)), and in LDL-cholesterol concentrations (156 +/- 32 mg/dl to 48 +/- 18 mg/dl (P < 0.01)). Immediately following LDL-apheresis, Lp(a) and LDL-cholesterol were reduced by 67.4% +/- 11.6% and 68.3% +/- 11.8%, respectively. The removal of Lp(a) paralleled that of LDL-cholesterol. The reduced levels of Lp(a) nearly returned to baseline within 7 days. In 6 of the heterozygous FH patients the rates of recovery of LDL cholesterol and Lp(a) were calculated, according to Apstein's equation after discontinuing lipid altering drug treatment for 4 weeks. Mean constant k values of LDL cholesterol and Lp(a) were 0.354 (range: 0.136-0.752) and 0.427 (range 0.112-0.933), respectively. The average concentration during the 7 days following LDL-apheresis was calculated. Average reductions were 28% in LDL cholesterol and 18% in Lp(a). Pravastatin treatment, which continued for 4 weeks, significantly decreased LDL cholesterol (P < 0.01); however, before LDL-apheresis pravastatin treatment significantly increased Lp(a) levels (P < 0.05) in a small number (n = 6) of the FH patients, who had been regularly treated with LDL-apheresis. These results suggest that LDL-apheresis using the dextran sulfate cellulose column is an effective treatment to reduce levels of serum Lp(a) and LDL proportionally. This therapy may be of value in the prevention and regression of coronary artery disease in FH patients.

Adolescent↗

Quantification of coronary artery calcification using ultrafast computed tomography: reproducibility of measurements.

BACKGROUND: Ultrafast computed tomography (CT) is a non-invasive method of visualizing and quantifying coronary artery calcification; its reproducibility, however, has not been fully elucidated. METHODS: To assess intra-observer, inter-observer, and inter-study reproducibility, 75 consecutive patients (51 men and 24 women) were studied. CT images were obtained using the volume mode of ultrafast CT (Imatron C-100). A total coronary calcification score (TCS) was calculated from the lesion area (> or = 2 pixels) and its peak CT density (> or = 130 HU). RESULTS: There was no intra-observer variability in two experienced observers. The TCS provided by these observers disagreed in 18 out of 75 (24%) cases, and the differences were -5.1 +/- 53 (mean +/- SD) for TCS and 0.014 +/- 0.13 for In(1 + TCS). They resulted from either 10 incorrect identifications of small coronary branches, or eight variations in determination of the ostial margin. The former was much smaller than the latter in TCS (0.66 +/- 3.0 and -48 +/- 165, respectively), but both were quite similar in In(1 + TCS) (0.082 +/- 0.31, 0.017 +/- 0.22, respectively). Between two scans, 50 out of 75 patients (67%) had different TCS values. The mean differences (95% confidence interval) were 1.8 +/- 106 (-210 to 214) in TCS, and -0.015 +/- 0.46 (-0.94 to 0.91) in In(1 + TCS). Because the differences increased with the mean values, the determination of TCS assumed a constant variance with increasing mean level. A comparison of scan images indicated that partial volume effects were responsible for this constant variance. CONCLUSION: Partial volume effects play a key role in producing the variability of TCS determination, and log transformation should be used to interpret TCS values. Thus, for clinical purposes, we recommend that two scans be performed in rapid succession, and that the average of these two scans be used to determine TCS.

Adolescent↗